Cancer

Items 331-340 of 370

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Set Descending Direction
  1. TRAIL-R2 (human):Fc (human) (rec.)
    AG-40B-0071
    AG-40B-0071-C05050 µg
    CHF 215.00
    AG-40B-0071-30503 x 50 µg
    CHF 430.00
  2. TREX1 (human) (rec.) (His) (active) (100µg)
    BBL-2265
    BBL-2265-C100100 µg
    CHF 4'559.00
    TREX1 (human) (rec.) (His) (active) (100µg)
  3. TREX1 (human) (rec.) (His) (active) (10µg)
    BBL-2262
    BBL-2262-C01010 µg
    CHF 1'227.00
    TREX1 (human) (rec.) (His) (active) (10µg)
  4. TREX1 (human) (rec.) (His) (active) (1µg)
    BBL-2260
    BBL-2260-C0011 µg
    CHF 441.00
    TREX1 (human) (rec.) (His) (active) (1µg)
  5. TRF-Ubiquitin Mix (100X) (2000 reactions)
    SBB-TR0051-2K
    SBB-TR0051-2K-11 Vial
    CHF 5'255.00
    TRF-Ubiquitin Mix (100X) (2000 reactions)
  6. TRF-Ubiquitin Mix (100X) (400 reactions)
    SBB-TR0051-4H
    SBB-TR0051-4H-11 Vial
    CHF 1'233.00
    TRF-Ubiquitin Mix (100X) (400 reactions)
  7. UbcH1 [UBE2K, E2-25K] (human) (rec.) (His)
    SBB-CE0022
    SBB-CE0022-C100100 µg
    CHF 345.00
    Thioester Activity Assay: UBE2K forms a thioester with Ub in an ATP-dependent manner and the bond can be reduced with addition of excess DTT. The thioester assay also shows di-ubiquitin formation with addition of ATP. This confirms the activity of
  8. UbcH5a [UBE2D1] (human) (rec.) (untagged)
    SBB-CE0021
    SBB-CE0021-C100100 µg
    CHF 345.00
    Thioester Activity Assay: UBE2D1 (UbcH5a) forms a thioester with Ub in an ATP-dependent manner and the bond can be reduced with addition of access DTT. Confirms the activity of UBE2D1.
  9. UbcH5b [UBE2D2] (human) (rec.) (untagged)
    SBB-CE0027
    SBB-CE0027-C100100 µg
    CHF 345.00
    Thioester Activity Assay: UBE2D2 (UbcH5b) forms a thioester with UB in an ATP dependent manner and the bond can be reduced with addition of access DTT. Confirms the activity of UBE2D2.
  10. UbcH5c [UBE2D3] (human) (rec.) (untagged)
    SBB-CE0019
    SBB-CE0019-C100100 µg
    CHF 345.00
    Thioester Activity Assay: UBE2D3 (UbcH5c) forms a thioester with Ub in an ATP-dependent manner and the bond can be reduced with addition of access DTT. Confirms the activity of UBE2D3.

Items 331-340 of 370

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